Approximation-solvability of Nonlinear Functional and Differential Equations

Approximation-solvability of Nonlinear Functional and Differential Equations
Author :
Publisher : Routledge
Total Pages : 394
Release :
ISBN-10 : 9781351465700
ISBN-13 : 1351465708
Rating : 4/5 (708 Downloads)

Book Synopsis Approximation-solvability of Nonlinear Functional and Differential Equations by : Wolodymyr V. Petryshyn

Download or read book Approximation-solvability of Nonlinear Functional and Differential Equations written by Wolodymyr V. Petryshyn and published by Routledge. This book was released on 2017-11-22 with total page 394 pages. Available in PDF, EPUB and Kindle. Book excerpt: This reference/text develops a constructive theory of solvability on linear and nonlinear abstract and differential equations - involving A-proper operator equations in separable Banach spaces, and treats the problem of existence of a solution for equations involving pseudo-A-proper and weakly-A-proper mappings, and illustrates their applications.;Facilitating the understanding of the solvability of equations in infinite dimensional Banach space through finite dimensional appoximations, this book: offers an elementary introductions to the general theory of A-proper and pseudo-A-proper maps; develops the linear theory of A-proper maps; furnishes the best possible results for linear equations; establishes the existence of fixed points and eigenvalues for P-gamma-compact maps, including classical results; provides surjectivity theorems for pseudo-A-proper and weakly-A-proper mappings that unify and extend earlier results on monotone and accretive mappings; shows how Friedrichs' linear extension theory can be generalized to the extensions of densely defined nonlinear operators in a Hilbert space; presents the generalized topological degree theory for A-proper mappings; and applies abstract results to boundary value problems and to bifurcation and asymptotic bifurcation problems.;There are also over 900 display equations, and an appendix that contains basic theorems from real function theory and measure/integration theory.


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